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Numerical study of convective thermal transport characteristics of hybrid nanofluid with magnetic dipole and heat source/sink

  • Mudassar Qamar,
  • Muhammad Yasir,
  • Masood Khan

摘要

The intriguing applications of nanoparticles in solar energy systems and thermal engineering have prompted numerous scholars to focus on their interactions as a result of significant advancements in field of nanotechnology. The higher energy consumption provided a challenge to thermal science, consequently thermal engineering is attempting to tackle such problems by improving the fluid's thermal conductivity. The incorporation of nanoparticles into the regular fluid boosts the thermal conduction of the traditional fluid. Keeping this in mind, an analysis is presented for the thermal transport of hybrid nanofluids due to a shrinking surface. Here, we examine silicon dioxide and molybdenum disulfide nanoparticles with methanol as base fluid. The partial differential equations are altered employing similarity transformations. The variation of various controlling parameters is plotted graphically. The outcomes confined that the non-uniqueness of solutions occurs for shrinking strength as well as the performance of hybrid nanofluids is more noteworthy to that of regular nanofluids. Additionally, the ferrohydrodynamic interaction for skin friction enhance the upper solution and reduce the lower solution but for heat transfer rate both solution increases. In certain limiting scenarios, the findings from this study are contrasted with those of prior researches.